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LT1767EMS8E-2.5 Datasheet(PDF) 9 Page - Linear Technology

Part # LT1767EMS8E-2.5
Description  Monolithic 1.5A, 1.25MHz Step-Down Switching Regulators
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LT1767EMS8E-2.5 Datasheet(HTML) 9 Page - Linear Technology

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LT1767/LT1767-1.8/
LT1767-2.5/LT1767-3.3/LT1767-5
sn1767 1767fas
APPLICATIONS INFORMATION
4. After making an initial choice, consider the secondary
things like output voltage ripple, second sourcing, etc.
Use the experts in the Linear Technology’s applica-
tions department if you feel uncertain about the final
choice. They have experience with a wide range of
inductor types and can tell you about the latest devel-
opments in low profile, surface mounting, etc.
CATCH DIODE
The suggested catch diode (D1) is a UPS120 Schottky, or
its Motorola equivalent, MBRM120LTI/MBRM130LTI. It
is rated at 2A average forward current and 20V/30V
reverse voltage. Typical forward voltage is 0.5V at 1A. The
diode conducts current only during switch off time. Peak
reverse voltage is equal to regulator input voltage. Average
forward current in normal operation can be calculated
from:
I
IV
V
V
D AVG
OUT
IN
OUT
IN
() =
()
BOOST PIN
For most applications, the boost components are a 0.1
µF
capacitor and a CMDSH-3 diode. The anode is typically
connected to the regulated output voltage to generate a
voltage approximately VOUT above VIN to drive the output
stage. The output driver requires at least 2.7V of head-
room throughout the on period to keep the switch fully
saturated. However, the output stage discharges the boost
capacitor during the on time. If the output voltage is less
than 3.3V, it is recommended that an alternate boost
supply is used. The boost diode can be connected to the
input, although, care must be taken to prevent the 2x VIN
boost voltage from exceeding the BOOST pin absolute
maximum rating. The additional voltage across the switch
driver also increases power loss, reducing efficiency. If
available, an independent supply can be used with a local
bypass capacitor.
A 0.1
µF boost capacitor is recommended for most appli-
cations. Almost any type of film or ceramic capacitor is
saturation of the inductor. In these applications, the
soft-start circuit shown in Figure 10 should be used.
2. Calculate peak inductor current at full load current to
ensure that the inductor will not saturate. Peak current
can be significantly higher than output current,
especially with smaller inductors and lighter loads, so
don’t omit this step. Powdered iron cores are forgiving
because they saturate softly, whereas ferrite cores
saturate abruptly. Other core materials fall somewhere
in between.
II
VV
V
Lf V
PEAK
OUT
OUT
IN
OUT
IN
=+
()
()( )( )
2
VIN = Maximum input voltage
f = Switching frequency, 1.25MHz
3. Decide if the design can tolerate an “open” core geom-
etry like a rod or barrel, which have high magnetic field
radiation, or whether it needs a closed core like a toroid
to prevent EMI problems. This is a tough decision
because the rods or barrels are temptingly cheap and
small and there are no helpful guidelines to calculate
when the magnetic field radiation will be a problem.
Table 3
PART NUMBER
VALUE (uH)
ISAT(Amps)
DCR (
Ω) HEIGHT (mm)
Coiltronics
TP1-2R2
2.2
1.3
0.188
1.8
TP2-2R2
2.2
1.5
0.111
2.2
TP3-4R7
4.7
1.5
0.181
2.2
TP4- 100
10
1.5
0.146
3.0
Murata
LQH1C1R0M04
1.0
0.51
0.28
1.8
LQH3C1R0M24
1.0
1.0
0.06
2.0
LQH3C2R2M24
2.2
0.79
0.1
2.0
LQH4C1R5M04
1.5
1.0
0.09
2.6
Sumida
CD73- 100
10
1.44
0.080
3.5
CDRH4D18-2R2
2.2
1.32
0.058
1.8
CDRH5D18-6R2
6.2
1.4
0.071
1.8
CDRH5D28-100
10
1.3
0.048
2.8


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